pENCODE: A Plant Encyclopedia of DNA Elements
Identifieur interne : 000559 ( Ncbi/Checkpoint ); précédent : 000558; suivant : 000560pENCODE: A Plant Encyclopedia of DNA Elements
Auteurs : Amanda K. Lane [États-Unis] ; Chad E. Niederhuth [États-Unis] ; Lexiang Ji [États-Unis] ; Robert J. Schmitz [États-Unis]Source :
- Annual review of genetics [ 0066-4197 ] ; 2014.
Abstract
ENCODE projects exist for many eukaryotes, including humans, but as of yet no defined project exists for plants. A plant ENCODE would be invaluable to the research community and could be more readily produced than its metazoan equivalents by capitalizing on the preexisting infrastructure provided from similar projects. Collecting and normalizing plant epigenomic data for a range of species will facilitate hypothesis generation, cross-species comparisons, annotation of genomes, and an understanding of epigenomic functions throughout plant evolution. Here, we discuss the need for such a project, outline the challenges it faces, and suggest ways forward to build a plant ENCODE.
Url:
DOI: 10.1146/annurev-genet-120213-092443
PubMed: 25149370
PubMed Central: 4463858
Affiliations:
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PMC:4463858Le document en format XML
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<front><div type="abstract" xml:lang="en"><p id="P1">ENCODE projects exist for many eukaryotes, including humans, but as of yet no defined project exists for plants. A plant ENCODE would be invaluable to the research community and could be more readily produced than its metazoan equivalents by capitalizing on the preexisting infrastructure provided from similar projects. Collecting and normalizing plant epigenomic data for a range of species will facilitate hypothesis generation, cross-species comparisons, annotation of genomes, and an understanding of epigenomic functions throughout plant evolution. Here, we discuss the need for such a project, outline the challenges it faces, and suggest ways forward to build a plant ENCODE.</p>
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